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化学生物学揭示植物脂类介导的信号事件中的作用机制。

Chemical Genetics to Uncover Mechanisms Underlying Lipid-Mediated Signaling Events in Plants.

机构信息

Department of Biology, Turkeyen Campus, University of Guyana, Greater Georgetown, Guyana.

Department of Biological Sciences, BioDiscovery Institute, University of North Texas, Denton, TX, USA.

出版信息

Methods Mol Biol. 2021;2213:3-16. doi: 10.1007/978-1-0716-0954-5_1.

Abstract

Like animals, plants use various lipids as signaling molecules to guide their growth and development. The focus of our work is on the N-acylethanolamine (NAE) group of lipid mediators, which have been shown to play important physiological roles in plants. However, mechanisms by which NAEs modulate plant function remain elusive. Chemical genetics has emerged as a potent tool to elucidate signaling pathways in plants, particularly those orchestrated by plant hormones. Like plant hormones, exogenous application of NAEs elicits distinct plant growth phenotypes that can serve as biological readouts for chemical genetic screens. For example, N-lauroylethanolamide (NAE 12:0) inhibits seedling development in the model plant Arabidopsis thaliana. Thus, a library of small synthetic chemical compounds can be rapidly screened for their ability to reverse the inhibitory effect of NAE 12:0 on seedling development. Chemicals identified through such screens could be potential agonists/antagonists of NAE receptors or signaling pathways and therefore serve as additional tools for understanding NAE function in plants. In this chapter, we describe general protocols for NAE 12:0-based chemical genetic screens in Arabidopsis. Although such screens were designed primarily for NAE 12:0, they could potentially be applied for similar work with other NAE species or plant lipid mediators.

摘要

与动物一样,植物也使用各种脂质作为信号分子来指导其生长和发育。我们的工作重点是脂质介体中的 N-酰基乙醇胺 (NAE) 组,已证明其在植物中发挥着重要的生理作用。然而,NAE 调节植物功能的机制仍不清楚。化学遗传学已成为阐明植物信号通路的有效工具,尤其是那些由植物激素调控的信号通路。与植物激素类似,外源性 NAE 的应用会引发独特的植物生长表型,可作为化学遗传筛选的生物学读数。例如,N-月桂酰乙醇胺 (NAE 12:0) 抑制拟南芥模式植物的幼苗发育。因此,可以快速筛选一小部分合成化学化合物,以确定它们是否能够逆转 NAE 12:0 对幼苗发育的抑制作用。通过此类筛选鉴定出的化学物质可能是 NAE 受体或信号通路的潜在激动剂/拮抗剂,因此可作为进一步了解 NAE 在植物中功能的工具。在本章中,我们描述了基于 NAE 12:0 的拟南芥化学遗传筛选的一般方案。虽然这些筛选主要针对 NAE 12:0 设计,但它们也可能适用于其他 NAE 物种或植物脂质介体的类似工作。

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